JP3296731B2 - Cable connector assembly and method of manufacturing the same - Google Patents

Cable connector assembly and method of manufacturing the same

Info

Publication number
JP3296731B2
JP3296731B2 JP27740496A JP27740496A JP3296731B2 JP 3296731 B2 JP3296731 B2 JP 3296731B2 JP 27740496 A JP27740496 A JP 27740496A JP 27740496 A JP27740496 A JP 27740496A JP 3296731 B2 JP3296731 B2 JP 3296731B2
Authority
JP
Japan
Prior art keywords
circuit board
flat cable
contacts
soldering
contact
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP27740496A
Other languages
Japanese (ja)
Other versions
JPH10106693A (en
Inventor
泰弘 加藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tyco Electronics Japan GK
Original Assignee
Tyco Electronics AMP KK
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tyco Electronics AMP KK filed Critical Tyco Electronics AMP KK
Priority to JP27740496A priority Critical patent/JP3296731B2/en
Priority to US08/936,286 priority patent/US6190196B1/en
Priority to KR1019970048919A priority patent/KR19980024994A/en
Publication of JPH10106693A publication Critical patent/JPH10106693A/en
Application granted granted Critical
Publication of JP3296731B2 publication Critical patent/JP3296731B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/77Coupling devices for flexible printed circuits, flat or ribbon cables or like structures
    • H01R12/771Details
    • H01R12/772Strain relieving means
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/77Coupling devices for flexible printed circuits, flat or ribbon cables or like structures
    • H01R12/79Coupling devices for flexible printed circuits, flat or ribbon cables or like structures connecting to rigid printed circuits or like structures
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K1/00Printed circuits
    • H05K1/02Details
    • H05K1/11Printed elements for providing electric connections to or between printed circuits
    • H05K1/117Pads along the edge of rigid circuit boards, e.g. for pluggable connectors

Landscapes

  • Coupling Device And Connection With Printed Circuit (AREA)
  • Manufacturing Of Electrical Connectors (AREA)
  • Multi-Conductor Connections (AREA)

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明はフラットケーブルに
接続されたケーブルコネクタ組立体及びその製造方法に
関する。
[0001] 1. Field of the Invention [0002] The present invention relates to a cable connector assembly connected to a flat cable and a method of manufacturing the same.

【0002】[0002]

【従来の技術】この種のケーブルコネクタ組立体とし
て、特開平2−114475号、特開平2−11707
4号及び特開平2−181373号の各公報に開示され
るものが知られている。これらのケーブルコネクタ組立
体によれば、信号導体及び接地導体を含むフラットケー
ブルがコネクタ本体に組み付けられ、フラットケーブル
の信号導体は信号用コンタクトに、接地導体は接地板又
は接地用コンタクトに夫々圧接して接続される。
2. Description of the Related Art JP-A-2-114475 and JP-A-2-11707 disclose such a cable connector assembly.
No. 4 and JP-A-2-181373 are known. According to these cable connector assemblies, a flat cable including a signal conductor and a ground conductor is assembled to the connector body, and the signal conductor of the flat cable is pressed against the signal contact, and the ground conductor is pressed against the ground plate or the ground contact. Connected.

【0003】[0003]

【発明の解決すべき課題】近年コネクタ部品は小型化さ
れ、フラットケーブルはより狭ピッチのものが使用され
る傾向にあり、上述のケーブルコネクタ組立体において
も更なる小型化が望まれる。しかしながら上述の公報に
開示されるケーブルコネクタ組立体では各導体と信号用
コンタクト、接地用コンタクト又は接地板との接続部
は、圧接型にして構成されるので、小型化及び狭ピッチ
化されたコネクタ部品としてに適さない。従って、本発
明は小型化及び狭ピッチ化に対応し、製造組立が容易な
ケーブルコネクタ組立体及びその製造方法を提供するこ
とを目的とする。
In recent years, connector parts have been miniaturized, and flat cables having a narrower pitch have been used, and further miniaturization of the above-described cable connector assembly is desired. However, in the cable connector assembly disclosed in the above-mentioned publication, the connection portion between each conductor and the signal contact, the ground contact or the ground plate is formed as a press-contact type, so that the connector is reduced in size and pitch. Not suitable for parts. SUMMARY OF THE INVENTION Accordingly, an object of the present invention is to provide a cable connector assembly which is easy to manufacture and assemble, and which is compatible with miniaturization and narrow pitch, and a method of manufacturing the same.

【0004】[0004]

【課題を解決するための手段】本発明に係るケーブルコ
ネクタ組立体は、フラットケーブルの複数の導体を前記
フラットケーブルの端位置から離れた位置で幅方向に露
出させて、前記フラットケーブルを回路基板の一面上に
略平行に載置して前記複数の導体の露出部分を前記回路
基板上のパッドに接続し、前記回路基板を絶縁ハウジン
グ内に配列した複数のコンタクトと接続させることによ
り、前記フラットケーブルの前記複数の導体と前記複数
のコンタクトとを電気的に相互接続するケーブルコネク
タ組立体において、該ケーブルコネクタ組立体は、前記
複数のコンタクトを固定する溝と前記回路基板を収容す
る凹部とを有する支持体を更に有し、前記複数のコンタ
クトは、相手コンタクトとの接触部、前記回路基板のス
ルーホール内に前記回路基板の他面から挿入され前記一
面に半田付接続される半田付部、並びに前記接触部及び
前記半田付部間に前記支持体の前記溝内に圧入される圧
入突起を有し、前記フラットケーブルの前記複数の導体
の露出部分は、前記回路基板の前記一面に半田付接続さ
れることを特徴とする。
A cable connector according to the present invention.
The nectar assembly exposes a plurality of conductors of the flat cable in a width direction at a position apart from an end position of the flat cable, and mounts the flat cable on one surface of a circuit board substantially in parallel with the plurality of conductors . The exposed portions of the conductors are connected to pads on the circuit board, and the circuit board is connected to a plurality of contacts arranged in an insulating housing, thereby electrically connecting the plurality of conductors and the plurality of contacts of the flat cable. A cable connector assembly, wherein said cable connector assembly comprises:
A groove for fixing a plurality of contacts and the circuit board are accommodated.
And a support having a concave portion, wherein the plurality of contours
The contact is the contact part with the mating contact and the circuit board
Into the through hole from the other side of the circuit board.
A soldered portion connected to the surface by soldering, and the contact portion and
The pressure that is pressed into the groove of the support between the soldered portions
The plurality of conductors of the flat cable having an insertion protrusion
The exposed portion is connected to the one surface of the circuit board by soldering.
It is that you said.

【0005】好ましくは、前記回路基板は一面側に回路
配線を具え逆面側に接地配線を具え、前記複数のコンタ
クト及び前記フラットケーブルは前記一面側から接続さ
れる。このとき、前記フラットケーブルの前記複数の導
体の一部及び前記複数のコンタクトは前記接地配線と接
地接続される。
Preferably, the circuit board has circuit wiring on one side and ground wiring on the opposite side, and the plurality of contacts and the flat cable are connected from the one side. At this time, a part of the plurality of conductors of the flat cable and the plurality of contacts are grounded to the ground wiring.

【0006】加えて、前記回路基板及びこれに接続され
た前記フラットケーブルは1対が用意され、前記回路基
板は前記一面を対向させて配置され、前記フラットケー
ブルの各々に対応した前記複数のコンタクトを前記絶縁
ハウジング内に反転した位置関係で配置させるのが良
い。
In addition, a pair of the circuit board and the flat cable connected to the circuit board are prepared, and the circuit board is arranged with the one surface facing each other, and the plurality of contacts corresponding to each of the flat cables are provided. May be arranged in the insulating housing in an inverted positional relationship.

【0007】更に本発明に係るケーブルコネクタ組立体
の製造方法は、フラットケーブルの端から離れた位置で
前記フラットケーブルの絶縁被覆の一部を剥離し、複数
の導体を前記絶縁被覆の途中位置に露出させる工程と、
相手コンタクトとの接触部、半田付部、並びに前記接触
部及び前記半田付部間に圧入突起を有する複数のコンタ
クトを支持体に固定する工程と、前記支持体の凹部内に
回路基板を収容して該回路基板のスルーホール内に前記
回路基板の他面から前記複数のコンタクトの前記半田付
部を挿入する工程と、前記複数のコンタクトの前記半田
付部を前記回路基板の一面に半田付接続する工程と、前
記フラットケーブルを前記回路基板の前記一面上に略平
行に載置し、前記複数の導体の露出部分を前記回路基板
の前記一面に半田付接続する工程と、前記複数のコンタ
クトの前記接触部を絶縁ハウジング内に配列させる工程
とを含むことを特徴とする。
[0007] Further , a cable connector assembly according to the present invention.
The manufacturing method is a step of exfoliating a part of the insulating coating of the flat cable at a position away from an end of the flat cable, and exposing a plurality of conductors at intermediate positions of the insulating coating,
Contact part with the mating contact , soldered part, and said contact
Plural contours having press-fit projections between the soldering portion and the soldering portion
Fixing the component to the support, and in the recess of the support,
The circuit board is accommodated in the through hole of the circuit board.
Soldering the plurality of contacts from the other surface of the circuit board
Inserting a portion, and the solder of the plurality of contacts
A step of connecting soldering the attachment portions on one surface of the circuit board, mounted substantially parallel to the flat cable on the one surface of the circuit board, the exposed portions of said plurality of conductive circuit board
Wherein the step of connecting soldered to one side of, the contact portion of the plurality of contact you; and a step of arranging in an insulating housing.

【0008】好ましくは、前記複数のコンタクトを前記
回路基板に接続する工程は、前記複数のコンタクトを前
記基板接続部を露出させて支持部材に固定する工程と、
前記支持部材上に前記回路基板を装着し、該回路基板を
前記複数のコンタクトに接続させる工程とを含む。
Preferably, the step of connecting the plurality of contacts to the circuit board includes the step of exposing the plurality of contacts to the board connecting portion and fixing the plurality of contacts to a supporting member.
Mounting the circuit board on the support member and connecting the circuit board to the plurality of contacts.

【0009】好ましくは、前記露出部分を前記回路基板
に接続する工程は前記露出部分をフォーミングする工程
と、フォーミングされた前記露出部分を前記回路基板の
回路上に半田付接続する工程とを含む。
Preferably, the step of connecting the exposed portion to the circuit board includes a step of forming the exposed portion and a step of connecting the formed exposed portion to a circuit of the circuit board by soldering.

【0010】好ましくは前記接触部を前記絶縁ハウジン
グ内に配列させる工程は、互いに相違する前記フラット
ケーブルに接続された1対の回路基板の間に中央絶縁部
材を載置し、該中央絶縁部材の頂底面側に前記回路基板
を配置し、前記回路基板の各々に接続された複数のコン
タクトを反転対称位置に配置する工程と、前記絶縁ハウ
ジングを前記接触部に重ねる工程とを含む。
Preferably, the step of arranging the contact portions in the insulating housing includes placing a central insulating member between a pair of circuit boards connected to the different flat cables, and A step of arranging the circuit board on the top and bottom sides, arranging a plurality of contacts connected to each of the circuit boards at an inverted symmetric position, and overlapping the insulating housing on the contact portion.

【0011】[0011]

【発明の実施の形態】以下に図面を参照して本発明の好
適実施形態となるケーブルコネクタ組立体及びその製造
方法について詳細に説明する。
BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a perspective view of a cable connector assembly according to a preferred embodiment of the present invention;

【0012】図1はケーブルコネクタ組立体を示す図で
(a)は正面図、(b)は側面図及び(c)はコネクタ
嵌合面を示す図である。また図2は図1(a)中の線A
−Aに沿う断面を90度回転させて示す図である。
FIGS. 1A and 1B show a cable connector assembly, wherein FIG. 1A is a front view, FIG. 1B is a side view, and FIG. 1C is a view showing a connector fitting surface. FIG. 2 is a line A in FIG.
It is a figure which shows the cross section along -A rotated 90 degrees.

【0013】図1に示されるようにケーブルコネクタ組
立体10はコネクタ20、20及び1対のフラットケー
ブル15、15を含む。両端のコネクタ20、20は同
一構造を有し、フラットケーブル15、15の両端に位
置する。コネクタ20、20は嵌合面20a.20aの
逆側に位置する逆面20b、20bの略中央より1対の
フラットケーブル15、15を延出するよう構成され
る。コネクタ20、20の嵌合面20a、20aには後
述のコンタクトが収容されるキャビティと連通する開口
27が形成される。またフラットケーブル15、15の
中間部分は複数のテープ16によって略筒状に束ねられ
る。
As shown in FIG. 1, cable connector assembly 10 includes connectors 20, 20 and a pair of flat cables 15, 15. The connectors 20 at both ends have the same structure and are located at both ends of the flat cable 15. The connectors 20, 20 have mating surfaces 20a. A pair of flat cables 15, 15 is configured to extend from substantially the center of the opposite surfaces 20b, 20b located on the opposite side of 20a. Openings 27 are formed in the mating surfaces 20a of the connectors 20, 20 so as to communicate with cavities in which contacts to be described later are accommodated. The intermediate portions of the flat cables 15 are bundled into a substantially cylindrical shape by a plurality of tapes 16.

【0014】図2に示すようにコネクタ20はフラット
ケーブル15、15と接続される回路基板90、90、
該回路基板90、90に接続されるコンタクト25、2
6を含む。コンタクト25、26は2列の各々のコンタ
クト列の中で交互に並べて置かれる。コンタクト25、
26は共通形状の雌型接触部30、30と相違する形状
の半田付タイン部31、32を有する。フラットケーブ
ル15、15は複数の導体の周囲に位置する絶縁被覆1
7、17を端近傍でハーフストリップして形成された導
体の露出部分18、18を有し、該露出部分18、18
が回路基板90、90に接続されるよう構成される。図
示されるように半田付タイン部31、32及び露出部分
は回路基板90、90の表面(一面)90a、90a側
に半田付接続される。回路基板90、90は支持体4
0、40の凹部41、41内に収容され、中央に位置す
る絶縁部材50に対して表面90a、90aを対向させ
て配置される。回路基板90、90の表面90a、90
aは支持体40、40の水平面42、42と略一面とな
るよう配置され、面90a、90a及び水平面42、4
2と絶縁部材50の面51,51との間にフラットケー
ブル受容キャビティ55、55を構成する。水平面4
2、42の後端には絶縁部材50の面51、51との間
にフラットケーブルを支持すべく支持面リブ44、44
が形成される。また支持体40、40の前端部43、4
3は絶縁部材50の面52、52との間にコンタクト2
5、26を貫通配置させる。
As shown in FIG. 2, the connector 20 includes circuit boards 90, 90 connected to the flat cables 15, 15.
The contacts 25, 2 connected to the circuit boards 90, 90
6 inclusive. The contacts 25, 26 are arranged alternately in each of the two contact rows. Contact 25,
26 has solder tine portions 31 and 32 having shapes different from the female contact portions 30 and 30 having a common shape. The flat cable 15, 15 is an insulating coating 1 located around a plurality of conductors.
7 and 17 have exposed portions 18 and 18 of the conductor formed by half-strip near the ends.
Are connected to the circuit boards 90, 90. As shown in the figure, the tines 31 and 32 and the exposed portions are soldered to the surfaces (one surface) 90a of the circuit boards 90 and 90. The circuit boards 90, 90 are
0, 40 are accommodated in the concave portions 41, 41, and are disposed with the surfaces 90a, 90a facing the insulating member 50 located at the center. Surface 90a of the circuit board 90, 90, 90
a is disposed so as to be substantially flush with the horizontal surfaces 42, 42 of the supports 40, 40, and the surfaces 90a, 90a and the horizontal surfaces 42, 4
The flat cable receiving cavities 55, 55 are formed between the second cable 2 and the surfaces 51, 51 of the insulating member 50. Horizontal plane 4
Supporting surface ribs 44, 44 are provided at the rear ends of the insulating members 50 to support flat cables between the surfaces 51, 51 of the insulating member 50.
Is formed. Also, the front ends 43, 4 of the supports 40, 40
3 is a contact 2 between the surfaces 52 and 52 of the insulating member 50.
5, 26 are penetrated.

【0015】更にコネクタ20の嵌合面側には、嵌合面
20aを含みコンタクト25、26の雌型接触部30の
夫々を収容する複数のキャビティ61を具える絶縁ハウ
ジング60が組み付けられる。絶縁ハウジング60には
支持体40、40の突起45と係合する係合孔62が形
成される。更に支持体40、40の後側にはカバーハウ
ジング70、70が取り付けられる。カバーハウジング
70、70は、支持体40、40のリブ47、47と係
合する溝71、71を有し、両者が係合することにより
所定位置に置かれる。更にその後コネクタ20の両側面
に置かれ、支持体40、40及びカバーハウジング7
0、70に嵌着される金属製のロック部材によって固定
される。ロック部材については後述する。カバーハウジ
ング70、70は絶縁部材50よりも更に後方へ延び、
フラットケーブル15、15を付き合わせてカバーハウ
ジング70、70の後面、即ちコネクタ20の後面20
bより後方に延出させる。カバーハウジング70、70
の内側にはフラットケーブル15、15を支持するため
の金属製のリブプレート72、72が配設される。リブ
プレート72、72を含むカバーハウジング70、70
はフラットケーブル15、15を頂底両側より挟み込
み、フラットケーブル15、15のストレインリリーフ
として作用する。
Further, an insulating housing 60 including a plurality of cavities 61 including the mating surface 20a and accommodating the female contact portions 30 of the contacts 25 and 26 is mounted on the mating surface side of the connector 20. An engagement hole 62 is formed in the insulating housing 60 so as to engage with the protrusion 45 of the support 40. Further, cover housings 70, 70 are attached to the rear side of the supports 40, 40. The cover housings 70, 70 have grooves 71, 71 which engage with the ribs 47, 47 of the supports 40, 40, and are put in place by engagement of the two. Further, the support members 40 and 40 and the cover housing 7 are placed on both sides of the connector 20.
It is fixed by a metal lock member fitted to 0, 70. The lock member will be described later. The cover housings 70, 70 extend further rearward than the insulating member 50,
The flat cables 15, 15 are put together and the rear surface of the cover housing 70, 70,
b. Cover housing 70, 70
Inside, metal rib plates 72, 72 for supporting the flat cables 15, 15 are provided. Cover housing 70, 70 including rib plates 72, 72
The flat cable 15 sandwiches the flat cables 15 from both the top and bottom sides and acts as a strain relief for the flat cables 15.

【0016】次に図3(a)乃至(g)を参照してケー
ブルコネクタ組立体10の製造方法について示す。図3
(a)乃至(g)は製造の工程を順に示す斜視図であ
る。
Next, a method of manufacturing the cable connector assembly 10 will be described with reference to FIGS. FIG.
(A) thru | or (g) are perspective views which show a manufacturing process in order.

【0017】組立の第1工程ではフラットケーブル15
の加工が行われる。フラットケーブル加工工程は特に図
示しないが、フラットケーブル15を所定の長さに
してカットし、カットされたフラットケーブル15の両
端の被覆をハーフストリップして導体の一部を露出さ
せ、更にフラットケーブル15の一部をフォーミングす
る工程を含む。フラットケーブル15をハーフストリッ
プする工程では、フラットケーブル15の端近傍で絶縁
被覆の一部をカット刃により切断した後、外方向へ若干
移動させ、切断した絶縁被覆を端近傍に残す(図2及び
図3(c)参照)。またフラットケーブル15のフォー
ミング工程では導体の露出部分18を図2に示す如く一
側に偏位するよう変形させ、回路基板との接続面19を
形成する。
In the first step of assembly, the flat cable 15
Is performed. Flat cable processing step is not particularly illustrated, and cut length measurement and the flat cable 15 into a predetermined length to expose the part of the conductor by half strip covering both ends of the flat cable 15 that is cut, further The step of forming a part of the flat cable 15 is included. In the step of half stripping the flat cable 15, a part of the insulating coating is cut near the end of the flat cable 15 by a cutting blade, and then slightly moved outward to leave the cut insulating coating near the end (FIGS. 2 and 3). FIG. 3 (c)). In the forming step of the flat cable 15, the exposed portion 18 of the conductor is deformed so as to be deviated to one side as shown in FIG. 2 to form a connection surface 19 with the circuit board.

【0018】組立の第2工程では図3(a)の如くコン
タクト25、26が支持体40に組み付けられる。図4
にはコンタクト25の斜視図が示される。コンタクト2
5の半田付タイン部31は比較的広幅の水平部31a、
及び比較的狭幅とされ、水平部31aから直立するよう
延びる半田付部31bを含む。図2から理解されるよう
にコンタクト26の半田付タイン部32も水平部32a
及び直立する半田付部32bを有するが、水平部32a
が31aより長い点でコンタクト25の半田付タイン部
31と相異する。雌型接触部30は基部30a及び接触
アーム部30bを含む。図4の如くコンタクト25は雌
型接触部30の基部30a及び水平部31aの夫々に圧
入突起36a、36bを有する。図示しないがコンタク
ト26も同様の位置に圧入突起を有する。更に図5には
支持体40が後方から見た斜視図にして示される。支持
体40にはコンタクト25、26の水平部31a、32
aを夫々収容する縦長溝48、49が形成され(図2参
照)、更に前端部43には各コンタクト25、26の横
に位置するよう形成された複数のキャビティ壁81が設
けられる。コンタクト25、26が支持体40に組み付
けられるとき、圧入突起36aが縦長溝48、49と、
また圧入突起36bがキャビティ壁81と夫々係合し、
これによりコンタクト25、26が支持体40に固定さ
れる。
In the second assembly step, the contacts 25 and 26 are assembled to the support 40 as shown in FIG. FIG.
Shows a perspective view of the contact 25. Contact 2
5 is a relatively wide horizontal portion 31a,
And a soldering portion 31b which is relatively narrow and extends upright from the horizontal portion 31a. As can be understood from FIG. 2, the soldered tine portion 32 of the contact 26 is also a horizontal portion 32a.
And an upright soldering portion 32b, but a horizontal portion 32a
Is different from the soldered tine portion 31 of the contact 25 in that it is longer than 31a. The female contact portion 30 includes a base 30a and a contact arm 30b. As shown in FIG. 4, the contact 25 has press-fit projections 36a and 36b at the base 30a and the horizontal portion 31a of the female contact portion 30, respectively. Although not shown, the contact 26 also has a press-fit projection at a similar position. FIG. 5 is a perspective view of the support body 40 as viewed from the rear. The horizontal portions 31a, 32 of the contacts 25, 26 are provided on the support 40.
Vertical grooves 48 and 49 for accommodating a, respectively, are formed (see FIG. 2), and a plurality of cavity walls 81 are formed in the front end 43 so as to be located beside the contacts 25 and 26. When the contacts 25 and 26 are assembled to the support body 40, the press-fitting projections 36a are vertically elongated grooves 48 and 49,
Further, the press-fit projections 36b engage with the cavity walls 81, respectively,
As a result, the contacts 25 and 26 are fixed to the support 40.

【0019】組立の第3工程では図3(b)の如く回路
基板90が支持体40に装着され、コンタクト25、2
6と半田付接続される。図6は使用される回路基板90
を示す図であり、(a)は平面図、(b)は底面の一部
を破断して示す図である。図6によれば、回路基板90
は内側がめっきされた複数のスルーホール91と、
(a)に示す表面90a側に形成された回路パッド列9
2と、(b)に示す裏面(他面)90b側に形成された
接地面95とを有する。回路パッド列92は比較的広幅
の第1パッド93と比較的狭幅の第2パッド94とを含
む。第1パッド93及び第2パッド94は回路パッド列
92内で交互に配列される。全ての第1パッド93には
接地面95と接地接続されるための比較的小径のスルー
ホール96が形成される。第1パッド93は接地面95
にのみ接続されるパッド93aと、表面90aの回路に
より隣接する第2パッド94と接続されるパッド93b
とを含む。即ち第1パッド93及びパッド93bと接続
された第2パッド94は接地回路の一部を構成し、他の
第2パッド94は信号回路を構成する。第2パッド94
の全ては表面90aの回路により回路パッド列92の配
列位置から外れた位置にある上述の比較的大径のスルー
ホール91と接続される。回路基板0が支持体40に
装着されるとき接地面95を含む裏面90bが支持体4
0に面する向きで支持体40に形成された凹部41内に
収容される。このときコンタクト25、26の半田付部
31b、32bがスルーホール91を貫通するよう置か
れる。その後半田付部31b、32bはスルーホール9
1に半田付接続される。
In the third step of assembly, the circuit board 90 is mounted on the support 40 as shown in FIG.
6 and connected by soldering. FIG. 6 shows a circuit board 90 used.
(A) is a plan view, and (b) is a view in which a part of the bottom surface is cut away. According to FIG.
Is a plurality of through holes 91 plated on the inside,
The circuit pad row 9 formed on the surface 90a side shown in FIG.
2 and a grounding surface 95 formed on the back surface (other surface ) 90b side shown in FIG. The circuit pad row 92 includes a relatively wide first pad 93 and a relatively narrow second pad 94. The first pads 93 and the second pads 94 are alternately arranged in the circuit pad row 92. All the first pads 93 are formed with relatively small diameter through holes 96 for ground connection with the ground plane 95. The first pad 93 is a ground plane 95
And a pad 93b connected to the adjacent second pad 94 by the circuit on the surface 90a.
And That is, the second pad 94 connected to the first pad 93 and the pad 93b forms a part of a ground circuit, and the other second pad 94 forms a signal circuit. Second pad 94
Are connected to the above-described relatively large-diameter through-holes 91 at positions deviated from the arrangement positions of the circuit pad rows 92 by the circuits on the surface 90a. Backside 90b the support 4 that includes a ground plane 95 when the circuit board 9 0 is attached to the support 40
It is accommodated in a recess 41 formed in the support body 40 in a direction facing 0. At this time, the soldered portions 31b and 32b of the contacts 25 and 26 are placed so as to pass through the through hole 91. After that, the soldering portions 31b and 32b are
1 is connected by soldering.

【0020】組立の第4の工程では図3(c)の如くフ
ラットケーブル15が回路基板0上に半田付接続され
る。第1の工程でハーフストリップされたフラットケー
ブル15は、露出部分18を回路基板0上の回路パッ
ド列92に位置合わせして配置され、複数の導体の露出
部分18が回路パッド列92の各パッドと半田付接続さ
れる。このとき比較的狭幅の第2パッド94の各々には
1本の導体が接続されるが、比較的広幅の第1パッド9
3には隣り合う2本の導体が半田付接続される。但し両
端の1対のパッド93には各1本が接続される。これに
より副組立体(サブアセンブリ)100が完成する。
In the fourth step of the assembly, the flat cable 15 is soldered on the circuit board 90 as shown in FIG. The flat cable 15 that has been half-striped in the first step is arranged with the exposed portion 18 aligned with the circuit pad row 92 on the circuit board 90 , and the exposed portions 18 of the plurality of conductors are It is connected to the pad by soldering. At this time, one conductor is connected to each of the relatively narrow second pads 94, but the relatively wide first pads 9 are connected.
3, two adjacent conductors are connected by soldering. However, one pair is connected to a pair of pads 93 at both ends. Thereby, the sub-assembly (sub-assembly) 100 is completed.

【0021】組立の第5工程では図3(d)の如く1対
のサブアセンブリ100と絶縁部材50とが組み立てら
れる。絶縁部材50を後方から見た斜視図が図7に示さ
れる。絶縁部材50は両側縁に沿って位置する比較的厚
板の側縁部53を有し、両側縁部53の前端近傍には頂
側及び底側に突出する2対のポスト54が形成される。
また両側縁部53の中間部には頂側及び底側に突出する
2対の板状部56が形成される。ポスト54及び板状部
56は支持体40、40に形成された開口82及びスロ
ット83(図5参照)と係合し、1対のサブアセンブリ
100と絶縁部材50との相対的位置を決定する。図2
及び図3(d)から理解されるように絶縁部材50は支
持体40よりも更に後方まで延出する。両側縁部53の
後方延出部分にはスロット57が形成される。なお、図
2及び図7から理解されるように面51の後方延出部分
は、フラットケーブル15の保持をより確実にすべく形
成された、外方へ拡開する拡開部分51aを有する。
In the fifth step of assembly, a pair of subassemblies 100 and an insulating member 50 are assembled as shown in FIG. FIG. 7 is a perspective view of the insulating member 50 as viewed from the rear. The insulating member 50 has a relatively thick plate side edge 53 located along both side edges, and two pairs of posts 54 projecting to the top and bottom sides are formed near the front ends of the both side edges 53. .
Further, two pairs of plate-like portions 56 projecting to the top and bottom sides are formed in the middle portion of the both side edge portions 53. The post 54 and the plate-shaped portion 56 engage with an opening 82 and a slot 83 (see FIG. 5) formed in the supports 40, 40 to determine a relative position between the pair of subassemblies 100 and the insulating member 50. . FIG.
3D, the insulating member 50 extends further back than the support 40. Slots 57 are formed in the rear extending portions of the side edge portions 53. As understood from FIGS. 2 and 7, the rearwardly extending portion of the surface 51 has an outwardly expanding portion 51a which is formed to more securely hold the flat cable 15.

【0022】組立の第6の工程では図3(e)の如く更
に絶縁ハウジング60が前側に組み付けられる。図8は
絶縁ハウジング60のみを示す図で、嵌合面20a側即
ち前方より見た斜視図である。図8から理解されるよう
に絶縁ハウジング60には各コンタクト25、26を収
容する複数のキャビティ61(図2参照)と連通した開
口27が2列にして形成される。図2に示すように絶縁
ハウジング60が組み付けられるときキャビティ61は
上述したようにコンタクト25、26の雌型接触部3
0、30を収容する。絶縁ハウジング60の嵌合面20
aの両端位置には1対の爪64とその頂側及び底側に位
置する肩63が形成される。また上述した係合孔62は
幅方向に延びるよう細長に形成される。図2を参照して
示したように絶縁ハウジング60の係合孔62と支持部
材40の突起45とが係合することにより絶縁ハウジン
グ60の組み付けが行われる。
In the sixth step of the assembly, the insulating housing 60 is further assembled on the front side as shown in FIG. FIG. 8 is a view showing only the insulating housing 60 and is a perspective view seen from the fitting surface 20a side, that is, from the front. As can be understood from FIG. 8, the insulating housing 60 has two rows of openings 27 communicating with a plurality of cavities 61 (see FIG. 2) for accommodating the respective contacts 25 and 26. When the insulating housing 60 is assembled as shown in FIG. 2, the cavity 61 is provided with the female contact portions 3 of the contacts 25 and 26 as described above.
0, 30 are accommodated. Fitting surface 20 of insulating housing 60
A pair of claws 64 and shoulders 63 located on the top and bottom sides thereof are formed at both end positions of “a”. The above-described engagement hole 62 is formed to be elongated so as to extend in the width direction. As shown with reference to FIG. 2, the engagement of the insulating housing 60 is performed by the engagement of the engagement hole 62 of the insulating housing 60 and the protrusion 45 of the support member 40.

【0023】組立の第7工程では図3(f)の如く更に
カバーハウジング70、70の組み付けが行われる。図
9はカバーハウジング70のみを示す前方から見た斜視
図である。カバーハウジング70は前端側に溝71が形
成された舌状部73、両側端近傍に形成された1対の突
起74、及び後端近傍において、両側端近傍に形成され
た係合手段を有する。図示されるように一側の係合手段
は突起75aであり、逆側の係合手段はスロット75b
である。更にカバーハウジング70の中央には傾斜面7
6を含む段差部77が形成され、段差部の後側位置には
上述したリブプレート72を収容可能なプレート収容ス
ロット78が設けられる。
In the seventh step of assembly, the cover housings 70 are further assembled as shown in FIG. FIG. 9 is a perspective view showing only the cover housing 70 as viewed from the front. The cover housing 70 has a tongue 73 having a groove 71 formed at the front end, a pair of protrusions 74 formed near both ends, and an engaging means formed near both ends near the rear end. As shown, one engaging means is a projection 75a, and the other engaging means is a slot 75b.
It is. Further, an inclined surface 7 is provided at the center of the cover housing 70.
6 is formed, and a plate accommodation slot 78 capable of accommodating the above-mentioned rib plate 72 is provided at a position on the rear side of the step.

【0024】金属製のリブプレート71、72(図2参
照)が収容された1対のカバーハウジング70、70は
図3(f)の如く支持体40、40の後側にフラットケ
ーブル15、15に重なるように配置される。このとき
舌状部73に形成された溝71が図2に示すように支持
体40、40のリブ47と係合し、且つ1対の突起7
4、74が支持体40、40のスロット83、83と係
合し、更にカバーハウジング70、70の係合手段75
a、75bは相手の係合手段75b、75aと互いに係
合する。
As shown in FIG. 3 (f), the pair of cover housings 70, 70 accommodating the metal rib plates 71, 72 (see FIG. 2) are provided with flat cables 15, 15 on the rear side of the supports 40, 40. It is arranged so that it may overlap. At this time, the groove 71 formed in the tongue-shaped portion 73 engages with the rib 47 of the support members 40, 40 as shown in FIG.
4, 74 are engaged with the slots 83, 83 of the supports 40, 40, and furthermore with the engagement means 75 of the cover housing 70, 70.
a and 75b engage with each other with the mating means 75b and 75a.

【0025】組立の第8工程では図3(g)の如くサブ
アセンブリ100を構成する支持体40、40とカバー
ハウジング70、70及び絶縁ハウジング60を相互に
固定するロック部材80、80が組み付けられる。図1
0には図3(g)の部分拡大図が示される。図3(g)
及び図10から理解されるようにロック部材80は金属
板の折り曲げにより断面が略C形状となるよう形成され
た嵌着部85と先端に並べて形成される1対の爪86a
とを有する。嵌着部85は支持体40及びカバーハウジ
ング70の外面に形成されたレール部88a、88bに
嵌着され、嵌着部85の前端89が支持体40の制止壁
87に略当接するよう置かれる。また、このとき1対の
爪86aは絶縁ハウジング60の1対の肩63と係合
し、1対の爪の間に位置する端壁86bは絶縁ハウジン
グ60の爪64と係合する。換言すればロック部材80
の前端部が絶縁ハウジング60の嵌合面20aの両端縁
とかみ合うように係合し、絶縁ハウジング60を強固に
固定する。
In the eighth step of assembling, as shown in FIG. 3 (g), lock members 80, 80 for mutually fixing the support members 40, 40 constituting the subassembly 100, the cover housings 70, 70 and the insulating housing 60 are assembled. . FIG.
FIG. 0 shows a partially enlarged view of FIG. FIG. 3 (g)
As can be understood from FIG. 10, the lock member 80 has a fitting portion 85 formed by bending a metal plate to have a substantially C-shaped cross section, and a pair of claws 86 a formed side by side at the tip.
And The fitting portion 85 is fitted to rail portions 88 a and 88 b formed on the outer surfaces of the support 40 and the cover housing 70, and the front end 89 of the fitting portion 85 is placed so as to substantially abut the blocking wall 87 of the support 40. . At this time, the pair of claws 86a engage with the pair of shoulders 63 of the insulating housing 60, and the end wall 86b located between the pair of claws engages with the claw 64 of the insulating housing 60. In other words, the lock member 80
Are engaged so as to engage with both end edges of the fitting surface 20a of the insulating housing 60, and the insulating housing 60 is firmly fixed.

【0026】第1乃至第8の工程によりケーブルコネク
タ組立体10の製造組立体が完了する。なお、上述の各
工程の説明はケーブルコネクタ組立体10の一側につい
てのものであるが、他側についても同様の工程が行われ
る。
The manufacturing assembly of the cable connector assembly 10 is completed by the first to eighth steps. Although the description of each of the above-mentioned steps is made on one side of the cable connector assembly 10, the same steps are performed on the other side.

【0027】以上の如く本発明の好適実施形態となるケ
ーブルコネクタ組立体及びその製造方法について示した
が、これは本発明を制限するものではなく当業者により
様々な変形変更が可能である。
As described above, the cable connector assembly and the method of manufacturing the same according to the preferred embodiment of the present invention have been described. However, this does not limit the present invention, and various modifications can be made by those skilled in the art.

【0028】[0028]

【発明の効果】本発明のケーブルコネクタ組立体によれ
ばフラットケーブルの複数の導体を端位置から離れた位
置で幅方向に露出させて、露出部分を回路基板上にパッ
ドに接続し、更に回路基板を絶縁ハウジング内に配列し
た複数のコンタクトと接続させることにより、フラット
ケーブルと複数のコンタクトとを電気的に相互接続する
よう構成されるので、比較的狭ピッチのフラットケーブ
ルとコネクタ内に収容されるコンタクトとの信頼性の高
い相互接続が実現される。
According to the cable connector assembly of the present invention, a plurality of conductors of a flat cable are exposed in a width direction at a position away from an end position, and the exposed portions are connected to pads on a circuit board. By connecting the substrate with a plurality of contacts arranged in an insulating housing, the flat cable and the plurality of contacts are configured to be electrically interconnected, so that the flat cable and the relatively narrow pitch flat cable are accommodated in the connector. A highly reliable interconnection with the contact.

【0029】また本発明のケーブルコネクタ組立体の製
造方法によればフラットケーブルの端から離れた位置で
絶縁被覆を一部剥離し、複数の導体を絶縁被覆の途中位
置に露出させ、絶縁ハウジングが収容されるコンタクト
が接続された回路基板上にフラットケーブルを平行にし
て載置し、複数の導体の露出部分を回路基板に接続する
ので露出部分で複数の導体のピッチを維持することがで
き回路基板の接続を確実に行うことができる。従って狭
ピッチのフラットケーブルとコネクタに収容されるコン
タクトとの相互接続を容易に実現でき、特に自動装置に
よる製造組立に適する。
According to the method for manufacturing a cable connector assembly of the present invention, the insulating coating is partially peeled off at a position away from the end of the flat cable, and a plurality of conductors are exposed at intermediate positions of the insulating coating. A flat cable is placed in parallel on the circuit board to which the contacts to be accommodated are connected, and the exposed portions of the plurality of conductors are connected to the circuit board, so that the pitch of the plurality of conductors can be maintained at the exposed portions. The connection of the substrates can be reliably performed. Therefore, interconnection between the flat cable having a narrow pitch and the contacts accommodated in the connector can be easily realized, and it is particularly suitable for manufacturing and assembling by an automatic device.

【図面の簡単な説明】[Brief description of the drawings]

【図1】 ケーブルコネクタ組立体を示す図で(a)
は正面図、(b)は側面図、及び(c)は嵌合面を示す
図。
FIG. 1 is a view showing a cable connector assembly (a).
3B is a front view, FIG. 3B is a side view, and FIG.

【図2】 図1(a)中の線A−Aに沿う断面を90
度回動させて示す図。
FIG. 2 is a cross-sectional view taken along a line AA in FIG.
FIG.

【図3】 ケーブルコネクタ組立体の製造工程を示す
斜視図で(a)は第2工程、(b)は第3工程、(c)
は第4工程、(d)は第5工程、(e)は第6工程、
(f)は第7工程、及び(g)は第8工程を夫々示す
図。
3A and 3B are perspective views showing a manufacturing process of the cable connector assembly, wherein FIG. 3A is a second process, FIG. 3B is a third process, and FIG.
Is a fourth step, (d) is a fifth step, (e) is a sixth step,
(F) is a figure which shows a 7th process, and (g) is a figure which shows an 8th process, respectively.

【図4】 図1のケーブルコネクタ組立体に使用され
るコンタクトを後方より見た斜視図。
FIG. 4 is a rear perspective view of a contact used in the cable connector assembly of FIG. 1;

【図5】 図1のケーブルコネクタ組立体に使用され
る支持体を後方より見た斜視図。
5 is a perspective view of a support used in the cable connector assembly of FIG. 1 as viewed from the rear.

【図6】 図1のケーブルコネクタ組立体に使用され
る回路基板を示す図で(a)は平面図、(b)は底面の
一部のみを示す図。
FIGS. 6A and 6B are diagrams showing a circuit board used in the cable connector assembly of FIG. 1, wherein FIG. 6A is a plan view and FIG.

【図7】 図1のケーブルコネクタ組立体に使用され
る絶縁部材を後方より見た斜視図。
7 is a perspective view of an insulating member used in the cable connector assembly of FIG. 1 as viewed from the rear.

【図8】 図1のケーブルコネクタ組立体に使用され
る絶縁ハウジングを後方より見た斜視図。
FIG. 8 is a rear perspective view of an insulating housing used in the cable connector assembly of FIG. 1;

【図9】 図1のケーブルコネクタ組立体に使用され
るカバーハウジングを前方より見た斜視図。
9 is a perspective view of a cover housing used in the cable connector assembly of FIG. 1 as viewed from the front.

【図10】 図3(g)の部分拡大図。FIG. 10 is a partially enlarged view of FIG. 3 (g).

【符号の説明】[Explanation of symbols]

10 ケーブルコネクタ組立体 15 フラットケーブル 18 露出部分 25、26 コンタクト 60 絶縁ハウジング 90 回路基板 93 第1パッド 94 第2パッド DESCRIPTION OF SYMBOLS 10 Cable connector assembly 15 Flat cable 18 Exposed part 25, 26 Contact 60 Insulating housing 90 Circuit board 93 1st pad 94 2nd pad

Claims (2)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】フラットケーブルの複数の導体を前記フラ
ットケーブルの端位置から離れた位置で幅方向に露出さ
せて、前記フラットケーブルを回路基板の一面上に略平
行に載置して前記複数の導体の露出部分を前記回路基板
上のパッドに接続し、前記回路基板を絶縁ハウジング内
に配列した複数のコンタクトと接続させることにより、
前記フラットケーブルの前記複数の導体と前記複数のコ
ンタクトとを電気的に相互接続するケーブルコネクタ組
立体において、 該ケーブルコネクタ組立体は、前記複数のコンタクトを
固定する溝と前記回路基板を収容する凹部とを有する支
持体を更に有し、 前記複数のコンタクトは、相手コンタクトとの接触部、
前記回路基板のスルーホール内に前記回路基板の他面か
ら挿入され前記一面に半田付接続される半田付部、並び
に前記接触部及び前記半田付部間に前記支持体の前記溝
内に圧入される圧入突起を有し、 前記フラットケーブルの前記複数の導体の露出部分は、
前記回路基板の前記一面に半田付接続される ことを特徴
とするケーブルコネクタ組立体。
A plurality of conductors of a flat cable are exposed in a width direction at a position distant from an end position of the flat cable, and the flat cable is placed on a surface of a circuit board substantially in parallel, and By connecting the exposed portion of the conductor to a pad on the circuit board and connecting the circuit board to a plurality of contacts arranged in an insulating housing,
A cable connector set for electrically interconnecting the plurality of conductors and the plurality of contacts of the flat cable
In a configuration, the cable connector assembly includes the plurality of contacts.
A support having a groove for fixing and a recess for accommodating the circuit board;
Further comprising a holding body, wherein the plurality of contacts are in contact with a mating contact;
Is the other side of the circuit board in the through hole of the circuit board?
A soldering part inserted from the side and connected to the one side by soldering,
The groove of the support between the contact portion and the soldering portion
Having a press-fit projection that is press-fitted into the exposed portion of the plurality of conductors of the flat cable,
A cable connector assembly which is connected to the one surface of the circuit board by soldering .
【請求項2】フラットケーブルの端から離れた位置で前
記フラットケーブルの絶縁被覆の一部を剥離し、複数の
導体を前記絶縁被覆の途中位置に露出させる工程と、 相手コンタクトとの接触部、半田付部、並びに前記接触
部及び前記半田付部間に圧入突起を有する複数のコンタ
クトを支持体に固定する工程と、 前記支持体の凹部内に回路基板を収容して該回路基板の
スルーホール内に前記回路基板の他面から前記複数のコ
ンタクトの前記半田付部を挿入する工程と、 前記複数のコンタクトの前記半田付部を前記回路基板の
一面に半田付 接続する工程と、 前記フラットケーブルを前記回路基板の前記一面上に略
平行に載置し、前記複数の導体の露出部分を前記回路基
の前記一面に半田付接続する工程と、 前記複数のコンタクトの前記接触部を絶縁ハウジング内
に配列させる工程とを含むことを特徴とするケーブルコ
ネクタ組立体の製造方法。
2. A step of exfoliating a part of the insulating coating of the flat cable at a position distant from an end of the flat cable to expose a plurality of conductors at intermediate positions of the insulating coating ; Soldering part and the contact
Plural contours having press-fit projections between the soldering portion and the soldering portion
Securing the circuit board to the support, and accommodating the circuit board in the concave portion of the support,
The plurality of cores are inserted into the through holes from the other surface of the circuit board.
Inserting the soldered portions of the contacts, and connecting the soldered portions of the plurality of contacts to the circuit board.
A step of connecting soldered to one side, the steps of the flat cable is placed substantially in parallel on the one surface of the circuit board, connecting soldering the exposed portion of the plurality of conductors to said one surface of said circuit board, Arranging the contact portions of the plurality of contacts in an insulating housing.
JP27740496A 1996-09-27 1996-09-27 Cable connector assembly and method of manufacturing the same Expired - Fee Related JP3296731B2 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP27740496A JP3296731B2 (en) 1996-09-27 1996-09-27 Cable connector assembly and method of manufacturing the same
US08/936,286 US6190196B1 (en) 1996-09-27 1997-09-24 Cable connector assembly
KR1019970048919A KR19980024994A (en) 1996-09-27 1997-09-26 Cable connector assembly and method of manufacturing the same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP27740496A JP3296731B2 (en) 1996-09-27 1996-09-27 Cable connector assembly and method of manufacturing the same

Publications (2)

Publication Number Publication Date
JPH10106693A JPH10106693A (en) 1998-04-24
JP3296731B2 true JP3296731B2 (en) 2002-07-02

Family

ID=17583079

Family Applications (1)

Application Number Title Priority Date Filing Date
JP27740496A Expired - Fee Related JP3296731B2 (en) 1996-09-27 1996-09-27 Cable connector assembly and method of manufacturing the same

Country Status (3)

Country Link
US (1) US6190196B1 (en)
JP (1) JP3296731B2 (en)
KR (1) KR19980024994A (en)

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Also Published As

Publication number Publication date
US6190196B1 (en) 2001-02-20
KR19980024994A (en) 1998-07-06
JPH10106693A (en) 1998-04-24

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